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4bd80e12 1/*
2 * This file is part of the libsigrok project.
3 *
4 * Copyright (C) 2013 Bert Vermeulen <bert@biot.com>
5 *
6 * This program is free software: you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation, either version 3 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program. If not, see <http://www.gnu.org/licenses/>.
18 */
19
6ec6c43b 20#include <config.h>
4bd80e12 21#include "protocol.h"
22
4bd80e12 23SR_PRIV int write_shortcommand(struct dev_context *devc, uint8_t command)
24{
25 uint8_t buf[1];
26 int bytes_written;
27
28 sr_dbg("Sending cmd 0x%.2x.", command);
29 buf[0] = command;
30 bytes_written = ftdi_write_data(devc->ftdic, buf, 1);
31 if (bytes_written < 0) {
32 sr_err("Failed to write FTDI data (%d): %s.",
33 bytes_written, ftdi_get_error_string(devc->ftdic));
34 return SR_ERR;
35 } else if (bytes_written != 1) {
36 sr_err("FTDI write error, only %d/%d bytes written: %s.",
37 bytes_written, 1, ftdi_get_error_string(devc->ftdic));
38 return SR_ERR;
39 }
40
41 return SR_OK;
42}
43
44SR_PRIV int write_longcommand(struct dev_context *devc, uint8_t command, uint8_t *data)
45{
46 uint8_t buf[5];
47 int bytes_written;
48
49 sr_dbg("Sending cmd 0x%.2x data 0x%.2x%.2x%.2x%.2x.", command,
50 data[0], data[1], data[2], data[3]);
51 buf[0] = command;
52 buf[1] = data[0];
53 buf[2] = data[1];
54 buf[3] = data[2];
55 buf[4] = data[3];
56 bytes_written = ftdi_write_data(devc->ftdic, buf, 5);
57 if (bytes_written < 0) {
58 sr_err("Failed to write FTDI data (%d): %s.",
59 bytes_written, ftdi_get_error_string(devc->ftdic));
60 return SR_ERR;
61 } else if (bytes_written != 5) {
62 sr_err("FTDI write error, only %d/%d bytes written: %s.",
63 bytes_written, 1, ftdi_get_error_string(devc->ftdic));
64 return SR_ERR;
65 }
66
67 return SR_OK;
68}
69
70SR_PRIV int p_ols_open(struct dev_context *devc)
71{
72 int ret;
73
74 /* Note: Caller checks devc and devc->ftdic. */
75
4bd80e12 76 ret = ftdi_set_interface(devc->ftdic, INTERFACE_B);
77 if (ret < 0) {
78 sr_err("Failed to set FTDI interface B (%d): %s", ret,
79 ftdi_get_error_string(devc->ftdic));
80 return SR_ERR;
81 }
4bd80e12 82
4bd80e12 83 ret = ftdi_usb_open_desc(devc->ftdic, USB_VENDOR_ID, USB_DEVICE_ID,
84 USB_IPRODUCT, NULL);
85 if (ret < 0) {
86 /* Log errors, except for -3 ("device not found"). */
87 if (ret != -3)
88 sr_err("Failed to open device (%d): %s", ret,
89 ftdi_get_error_string(devc->ftdic));
90 return SR_ERR;
91 }
4bd80e12 92
e1a712ca 93 if ((ret = PURGE_FTDI_BOTH(devc->ftdic)) < 0) {
4bd80e12 94 sr_err("Failed to purge FTDI RX/TX buffers (%d): %s.",
95 ret, ftdi_get_error_string(devc->ftdic));
96 goto err_open_close_ftdic;
97 }
4bd80e12 98
4bd80e12 99 ret = ftdi_set_bitmode(devc->ftdic, 0xff, BITMODE_RESET);
100 if (ret < 0) {
101 sr_err("Failed to reset the FTDI chip bitmode (%d): %s.",
102 ret, ftdi_get_error_string(devc->ftdic));
103 goto err_open_close_ftdic;
104 }
4bd80e12 105
4bd80e12 106 ret = ftdi_set_latency_timer(devc->ftdic, 16);
107 if (ret < 0) {
108 sr_err("Failed to set FTDI latency timer (%d): %s.",
109 ret, ftdi_get_error_string(devc->ftdic));
110 goto err_open_close_ftdic;
111 }
4bd80e12 112
4bd80e12 113 ret = ftdi_read_data_set_chunksize(devc->ftdic, 64 * 1024);
114 if (ret < 0) {
115 sr_err("Failed to set FTDI read data chunk size (%d): %s.",
116 ret, ftdi_get_error_string(devc->ftdic));
117 goto err_open_close_ftdic;
118 }
176d785d 119
4bd80e12 120 return SR_OK;
121
122err_open_close_ftdic:
1f9bcd0f 123 ftdi_usb_close(devc->ftdic);
7e463623 124
4bd80e12 125 return SR_ERR;
126}
127
128SR_PRIV int p_ols_close(struct dev_context *devc)
129{
130 int ret;
131
132 /* Note: Caller checks devc and devc->ftdic. */
133
134 if ((ret = ftdi_usb_close(devc->ftdic)) < 0) {
135 sr_err("Failed to close FTDI device (%d): %s.",
136 ret, ftdi_get_error_string(devc->ftdic));
137 return SR_ERR;
138 }
139
140 return SR_OK;
141}
142
acc885c7
BV
143/* Configures the channel mask based on which channels are enabled. */
144SR_PRIV void pols_channel_mask(const struct sr_dev_inst *sdi)
4bd80e12 145{
146 struct dev_context *devc;
acc885c7 147 struct sr_channel *channel;
4bd80e12 148 const GSList *l;
4bd80e12 149
150 devc = sdi->priv;
151
152 devc->channel_mask = 0;
acc885c7
BV
153 for (l = sdi->channels; l; l = l->next) {
154 channel = l->data;
155 if (channel->enabled)
156 devc->channel_mask |= 1 << channel->index;
157 }
158}
159
160SR_PRIV int pols_convert_trigger(const struct sr_dev_inst *sdi)
161{
162 struct dev_context *devc;
163 struct sr_trigger *trigger;
164 struct sr_trigger_stage *stage;
165 struct sr_trigger_match *match;
166 const GSList *l, *m;
167 int i;
168
169 devc = sdi->priv;
170
171 devc->num_stages = 0;
4bd80e12 172 for (i = 0; i < NUM_TRIGGER_STAGES; i++) {
173 devc->trigger_mask[i] = 0;
174 devc->trigger_value[i] = 0;
1e0de846 175 devc->trigger_edge[i] = 0;
4bd80e12 176 }
177
acc885c7
BV
178 if (!(trigger = sr_session_trigger_get(sdi->session)))
179 return SR_OK;
4bd80e12 180
acc885c7
BV
181 devc->num_stages = g_slist_length(trigger->stages);
182 if (devc->num_stages > NUM_TRIGGER_STAGES) {
183 sr_err("This device only supports %d trigger stages.",
184 NUM_TRIGGER_STAGES);
185 return SR_ERR;
186 }
4bd80e12 187
acc885c7
BV
188 for (l = trigger->stages; l; l = l->next) {
189 stage = l->data;
190 for (m = stage->matches; m; m = m->next) {
191 match = m->data;
192 if (!match->channel->enabled)
193 /* Ignore disabled channels with a trigger. */
194 continue;
195 devc->trigger_mask[stage->stage] |= 1 << match->channel->index;
196 if (match->match == SR_TRIGGER_ONE || match->match == SR_TRIGGER_RISING)
197 devc->trigger_value[stage->stage] |= 1 << match->channel->index;
198 if (match->match == SR_TRIGGER_RISING || match->match == SR_TRIGGER_FALLING)
199 devc->trigger_edge[stage->stage] |= 1 << match->channel->index;
4bd80e12 200 }
4bd80e12 201 }
202
203 return SR_OK;
204}
205
206SR_PRIV struct sr_dev_inst *p_ols_get_metadata(uint8_t *buf, int bytes_read, struct dev_context *devc)
207{
208 struct sr_dev_inst *sdi;
4bd80e12 209 uint32_t tmp_int, ui;
210 uint8_t key, type, token;
211 GString *tmp_str, *devname, *version;
212 guchar tmp_c;
4389a542 213 int index;
4bd80e12 214
aac29cc1 215 sdi = g_malloc0(sizeof(struct sr_dev_inst));
0af636be 216 sdi->status = SR_ST_INACTIVE;
4bd80e12 217 sdi->priv = devc;
218
219 devname = g_string_new("");
220 version = g_string_new("");
221
222 index = 0;
223 while (index < bytes_read) {
224 key = buf[index++];
225 if (key == 0x00) {
226 sr_dbg("Got metadata key 0x00, metadata ends.");
227 break;
228 }
229 type = key >> 5;
230 token = key & 0x1f;
231 switch (type) {
232 case 0:
233 /* NULL-terminated string */
234 tmp_str = g_string_new("");
235 while ((index < bytes_read) && ((tmp_c = buf[index++]) != '\0'))
236 g_string_append_c(tmp_str, tmp_c);
237 sr_dbg("Got metadata key 0x%.2x value '%s'.",
238 key, tmp_str->str);
239 switch (token) {
240 case 0x01:
241 /* Device name */
242 devname = g_string_append(devname, tmp_str->str);
243 break;
244 case 0x02:
245 /* FPGA firmware version */
246 if (version->len)
247 g_string_append(version, ", ");
248 g_string_append(version, "FPGA version ");
249 g_string_append(version, tmp_str->str);
250 break;
251 case 0x03:
252 /* Ancillary version */
253 if (version->len)
254 g_string_append(version, ", ");
255 g_string_append(version, "Ancillary version ");
256 g_string_append(version, tmp_str->str);
257 break;
258 default:
259 sr_info("Unknown token 0x%.2x: '%s'",
260 token, tmp_str->str);
261 break;
262 }
263 g_string_free(tmp_str, TRUE);
264 break;
265 case 1:
266 /* 32-bit unsigned integer */
4389a542
GS
267 tmp_int = RB32(&buf[index]);
268 index += sizeof(uint32_t);
4bd80e12 269 sr_dbg("Got metadata key 0x%.2x value 0x%.8x.",
270 key, tmp_int);
271 switch (token) {
272 case 0x00:
273 /* Number of usable channels */
5e23fcab
ML
274 for (ui = 0; ui < tmp_int; ui++)
275 sr_channel_new(sdi, ui, SR_CHANNEL_LOGIC, TRUE,
c368e6f3 276 p_ols_channel_names[ui]);
4bd80e12 277 break;
278 case 0x01:
279 /* Amount of sample memory available (bytes) */
b94cff40 280 devc->max_samplebytes = tmp_int;
4bd80e12 281 break;
282 case 0x02:
283 /* Amount of dynamic memory available (bytes) */
284 /* what is this for? */
285 break;
286 case 0x03:
f3f19d11 287 /* Maximum sample rate (Hz) */
4bd80e12 288 devc->max_samplerate = tmp_int;
289 break;
290 case 0x04:
291 /* protocol version */
292 devc->protocol_version = tmp_int;
293 break;
294 default:
295 sr_info("Unknown token 0x%.2x: 0x%.8x.",
296 token, tmp_int);
297 break;
298 }
299 break;
300 case 2:
301 /* 8-bit unsigned integer */
302 tmp_c = buf[index++];
303 sr_dbg("Got metadata key 0x%.2x value 0x%.2x.",
304 key, tmp_c);
305 switch (token) {
306 case 0x00:
307 /* Number of usable channels */
5e23fcab
ML
308 for (ui = 0; ui < tmp_c; ui++)
309 sr_channel_new(sdi, ui, SR_CHANNEL_LOGIC, TRUE,
c368e6f3 310 p_ols_channel_names[ui]);
4bd80e12 311 break;
312 case 0x01:
313 /* protocol version */
314 devc->protocol_version = tmp_c;
315 break;
316 default:
317 sr_info("Unknown token 0x%.2x: 0x%.2x.",
318 token, tmp_c);
319 break;
320 }
321 break;
322 default:
323 /* unknown type */
324 break;
325 }
326 }
327
d41c4131
MV
328 sdi->model = g_string_free(devname, FALSE);
329 sdi->version = g_string_free(version, FALSE);
4bd80e12 330
331 return sdi;
332}
333
334SR_PRIV int p_ols_set_samplerate(const struct sr_dev_inst *sdi,
335 const uint64_t samplerate)
336{
337 struct dev_context *devc;
338
339 devc = sdi->priv;
340 if (devc->max_samplerate && samplerate > devc->max_samplerate)
341 return SR_ERR_SAMPLERATE;
342
343 if (samplerate > CLOCK_RATE) {
344 sr_info("Enabling demux mode.");
345 devc->flag_reg |= FLAG_DEMUX;
346 devc->flag_reg &= ~FLAG_FILTER;
347 devc->max_channels = NUM_CHANNELS / 2;
348 devc->cur_samplerate_divider = (CLOCK_RATE * 2 / samplerate) - 1;
349 } else {
350 sr_info("Disabling demux mode.");
351 devc->flag_reg &= ~FLAG_DEMUX;
352 devc->flag_reg |= FLAG_FILTER;
353 devc->max_channels = NUM_CHANNELS;
354 devc->cur_samplerate_divider = (CLOCK_RATE / samplerate) - 1;
355 }
356
357 /* Calculate actual samplerate used and complain if it is different
358 * from the requested.
359 */
360 devc->cur_samplerate = CLOCK_RATE / (devc->cur_samplerate_divider + 1);
361 if (devc->flag_reg & FLAG_DEMUX)
362 devc->cur_samplerate *= 2;
363 if (devc->cur_samplerate != samplerate)
364 sr_info("Can't match samplerate %" PRIu64 ", using %"
365 PRIu64 ".", samplerate, devc->cur_samplerate);
366
367 return SR_OK;
368}
369
4bd80e12 370SR_PRIV int p_ols_receive_data(int fd, int revents, void *cb_data)
371{
372 struct dev_context *devc;
373 struct sr_dev_inst *sdi;
374 struct sr_datafeed_packet packet;
375 struct sr_datafeed_logic logic;
376 uint32_t sample;
377 int num_channels, offset, j;
378 int bytes_read, index;
379 unsigned int i;
380 unsigned char byte;
381
382 (void)fd;
383 (void)revents;
384
385 sdi = cb_data;
386 devc = sdi->priv;
387
388 if (devc->num_transfers++ == 0) {
389 devc->raw_sample_buf = g_try_malloc(devc->limit_samples * 4);
390 if (!devc->raw_sample_buf) {
391 sr_err("Sample buffer malloc failed.");
392 return FALSE;
393 }
394 /* fill with 1010... for debugging */
395 memset(devc->raw_sample_buf, 0x82, devc->limit_samples * 4);
396 }
397
b94cff40 398 if ((devc->num_samples < devc->limit_samples) && (devc->cnt_samples < devc->max_samples)) {
4bd80e12 399
400 num_channels = 0;
401 for (i = NUM_CHANNELS; i > 0x02; i /= 2) {
402 if ((devc->flag_reg & i) == 0) {
403 num_channels++;
404 }
405 }
406
407 /* Get a block of data. */
408 bytes_read = ftdi_read_data(devc->ftdic, devc->ftdi_buf, FTDI_BUF_SIZE);
409 if (bytes_read < 0) {
410 sr_err("Failed to read FTDI data (%d): %s.",
411 bytes_read, ftdi_get_error_string(devc->ftdic));
d2f7c417 412 sr_dev_acquisition_stop(sdi);
4bd80e12 413 return FALSE;
414 }
415 if (bytes_read == 0) {
416 sr_spew("Received 0 bytes, nothing to do.");
417 return TRUE;
418 }
419
420 sr_dbg("Received %d bytes", bytes_read);
421
422 index = 0;
423 while (index < bytes_read) {
424 byte = devc->ftdi_buf[index++];
425 devc->cnt_bytes++;
426
427 devc->sample[devc->num_bytes++] = byte;
428 sr_spew("Received byte 0x%.2x.", byte);
b94cff40 429
430 if ((devc->flag_reg & FLAG_DEMUX) && (devc->flag_reg & FLAG_RLE)) {
176d785d 431 /* RLE in demux mode must be processed differently
b94cff40 432 * since in this case the RLE encoder is operating on pairs of samples.
433 */
434 if (devc->num_bytes == num_channels * 2) {
435 devc->cnt_samples += 2;
436 devc->cnt_samples_rle += 2;
4bd80e12 437 /*
b94cff40 438 * Got a sample pair. Convert from the OLS's little-endian
439 * sample to the local format.
440 */
441 sample = devc->sample[0] | (devc->sample[1] << 8) \
442 | (devc->sample[2] << 16) | (devc->sample[3] << 24);
443 sr_spew("Received sample pair 0x%.*x.", devc->num_bytes * 2, sample);
444
445 /*
446 * In RLE mode the high bit of the sample pair is the
447 * "count" flag, meaning this sample pair is the number
448 * of times the previous sample pair occurred.
4bd80e12 449 */
450 if (devc->sample[devc->num_bytes - 1] & 0x80) {
451 /* Clear the high bit. */
452 sample &= ~(0x80 << (devc->num_bytes - 1) * 8);
453 devc->rle_count = sample;
b94cff40 454 devc->cnt_samples_rle += devc->rle_count * 2;
455 sr_dbg("RLE count: %u.", devc->rle_count * 2);
4bd80e12 456 devc->num_bytes = 0;
457 continue;
458 }
b94cff40 459 devc->num_samples += (devc->rle_count + 1) * 2;
460 if (devc->num_samples > devc->limit_samples) {
461 /* Save us from overrunning the buffer. */
462 devc->rle_count -= (devc->num_samples - devc->limit_samples) / 2;
463 devc->num_samples = devc->limit_samples;
464 index = bytes_read;
465 }
4bd80e12 466
4bd80e12 467 /*
468 * Some channel groups may have been turned
469 * off, to speed up transfer between the
470 * hardware and the PC. Expand that here before
471 * submitting it over the session bus --
472 * whatever is listening on the bus will be
473 * expecting a full 32-bit sample, based on
474 * the number of channels.
475 */
476 j = 0;
b94cff40 477 /* expand first sample */
4bd80e12 478 memset(devc->tmp_sample, 0, 4);
b94cff40 479 for (i = 0; i < 2; i++) {
4bd80e12 480 if (((devc->flag_reg >> 2) & (1 << i)) == 0) {
481 /*
482 * This channel group was
483 * enabled, copy from received
484 * sample.
485 */
486 devc->tmp_sample[i] = devc->sample[j++];
176d785d 487 }
4bd80e12 488 }
b94cff40 489 /* Clear out the most significant bit of the sample */
490 devc->tmp_sample[devc->num_bytes - 1] &= 0x7f;
6433156c
DE
491 sr_spew("Expanded sample 1: 0x%.2x%.2x%.2x%.2x.",
492 devc->tmp_sample[3], devc->tmp_sample[2],
493 devc->tmp_sample[1], devc->tmp_sample[0]);
b94cff40 494
495 /* expand second sample */
496 memset(devc->tmp_sample2, 0, 4);
497 for (i = 0; i < 2; i++) {
498 if (((devc->flag_reg >> 2) & (1 << i)) == 0) {
499 /*
500 * This channel group was
501 * enabled, copy from received
502 * sample.
503 */
504 devc->tmp_sample2[i] = devc->sample[j++];
176d785d 505 }
b94cff40 506 }
507 /* Clear out the most significant bit of the sample */
508 devc->tmp_sample2[devc->num_bytes - 1] &= 0x7f;
6433156c
DE
509 sr_spew("Expanded sample 2: 0x%.2x%.2x%.2x%.2x.",
510 devc->tmp_sample2[3], devc->tmp_sample2[2],
511 devc->tmp_sample2[1], devc->tmp_sample2[0]);
b94cff40 512
513 /*
514 * OLS sends its sample buffer backwards.
515 * store it in reverse order here, so we can dump
516 * this on the session bus later.
517 */
518 offset = (devc->limit_samples - devc->num_samples) * 4;
519 for (i = 0; i <= devc->rle_count; i++) {
520 memcpy(devc->raw_sample_buf + offset + (i * 8),
521 devc->tmp_sample2, 4);
522 memcpy(devc->raw_sample_buf + offset + (4 + (i * 8)),
523 devc->tmp_sample, 4);
524 }
525 memset(devc->sample, 0, 4);
526 devc->num_bytes = 0;
527 devc->rle_count = 0;
4bd80e12 528 }
b94cff40 529 }
530 else {
531 if (devc->num_bytes == num_channels) {
532 devc->cnt_samples++;
533 devc->cnt_samples_rle++;
534 /*
535 * Got a full sample. Convert from the OLS's little-endian
536 * sample to the local format.
537 */
538 sample = devc->sample[0] | (devc->sample[1] << 8) \
539 | (devc->sample[2] << 16) | (devc->sample[3] << 24);
540 sr_spew("Received sample 0x%.*x.", devc->num_bytes * 2, sample);
541 if (devc->flag_reg & FLAG_RLE) {
542 /*
543 * In RLE mode the high bit of the sample is the
544 * "count" flag, meaning this sample is the number
545 * of times the previous sample occurred.
546 */
547 if (devc->sample[devc->num_bytes - 1] & 0x80) {
548 /* Clear the high bit. */
549 sample &= ~(0x80 << (devc->num_bytes - 1) * 8);
550 devc->rle_count = sample;
551 devc->cnt_samples_rle += devc->rle_count;
552 sr_dbg("RLE count: %u.", devc->rle_count);
553 devc->num_bytes = 0;
554 continue;
555 }
556 }
557 devc->num_samples += devc->rle_count + 1;
558 if (devc->num_samples > devc->limit_samples) {
559 /* Save us from overrunning the buffer. */
560 devc->rle_count -= devc->num_samples - devc->limit_samples;
561 devc->num_samples = devc->limit_samples;
562 index = bytes_read;
563 }
564
565 if (num_channels < 4) {
566 /*
567 * Some channel groups may have been turned
568 * off, to speed up transfer between the
569 * hardware and the PC. Expand that here before
570 * submitting it over the session bus --
571 * whatever is listening on the bus will be
572 * expecting a full 32-bit sample, based on
573 * the number of channels.
574 */
575 j = 0;
576 memset(devc->tmp_sample, 0, 4);
577 for (i = 0; i < 4; i++) {
578 if (((devc->flag_reg >> 2) & (1 << i)) == 0) {
579 /*
580 * This channel group was
581 * enabled, copy from received
582 * sample.
583 */
584 devc->tmp_sample[i] = devc->sample[j++];
176d785d 585 }
b94cff40 586 }
587 memcpy(devc->sample, devc->tmp_sample, 4);
588 sr_spew("Expanded sample: 0x%.8x.", sample);
589 }
4bd80e12 590
b94cff40 591 /*
592 * Pipistrello OLS sends its sample buffer backwards.
593 * store it in reverse order here, so we can dump
594 * this on the session bus later.
595 */
596 offset = (devc->limit_samples - devc->num_samples) * 4;
597 for (i = 0; i <= devc->rle_count; i++) {
598 memcpy(devc->raw_sample_buf + offset + (i * 4),
599 devc->sample, 4);
600 }
601 memset(devc->sample, 0, 4);
602 devc->num_bytes = 0;
603 devc->rle_count = 0;
4bd80e12 604 }
4bd80e12 605 }
606 }
607 return TRUE;
608 } else {
dc89faea
UH
609 do {
610 bytes_read = ftdi_read_data(devc->ftdic, devc->ftdi_buf, FTDI_BUF_SIZE);
611 } while (bytes_read > 0);
b94cff40 612
4bd80e12 613 /*
614 * We've acquired all the samples we asked for -- we're done.
615 * Send the (properly-ordered) buffer to the frontend.
616 */
617 sr_dbg("Received %d bytes, %d samples, %d decompressed samples.",
618 devc->cnt_bytes, devc->cnt_samples,
619 devc->cnt_samples_rle);
620 if (devc->trigger_at != -1) {
621 /*
622 * A trigger was set up, so we need to tell the frontend
623 * about it.
624 */
625 if (devc->trigger_at > 0) {
626 /* There are pre-trigger samples, send those first. */
627 packet.type = SR_DF_LOGIC;
628 packet.payload = &logic;
629 logic.length = devc->trigger_at * 4;
630 logic.unitsize = 4;
631 logic.data = devc->raw_sample_buf +
632 (devc->limit_samples - devc->num_samples) * 4;
695dc859 633 sr_session_send(sdi, &packet);
4bd80e12 634 }
635
636 /* Send the trigger. */
0fa71943 637 std_session_send_df_trigger(sdi);
4bd80e12 638
639 /* Send post-trigger samples. */
640 packet.type = SR_DF_LOGIC;
641 packet.payload = &logic;
642 logic.length = (devc->num_samples * 4) - (devc->trigger_at * 4);
643 logic.unitsize = 4;
644 logic.data = devc->raw_sample_buf + devc->trigger_at * 4 +
645 (devc->limit_samples - devc->num_samples) * 4;
695dc859 646 sr_session_send(sdi, &packet);
4bd80e12 647 } else {
648 /* no trigger was used */
649 packet.type = SR_DF_LOGIC;
650 packet.payload = &logic;
651 logic.length = devc->num_samples * 4;
652 logic.unitsize = 4;
653 logic.data = devc->raw_sample_buf +
654 (devc->limit_samples - devc->num_samples) * 4;
695dc859 655 sr_session_send(sdi, &packet);
4bd80e12 656 }
657 g_free(devc->raw_sample_buf);
658
d2f7c417 659 sr_dev_acquisition_stop(sdi);
4bd80e12 660 }
661
662 return TRUE;
663}